Claims
- 1. A method for creating a perforation pattern in a material, comprising the steps of:
directing an electromagnetic energy source to apply the energy to a targeted region of the material, so as to modify a portion of the material in the region in a predetermined crater pattern due to the material which has been modified.
- 2. A method according to claim 1, wherein modification of said targeted material comprises removal of said targeted material.
- 3. A method according to claim 2, wherein said material removal comprises creating a crater patterns capable of holding color-pigment, said craters are of a desired size, shape and depth.
- 4. A method according to claim 3, wherein said craters are generated using a beam of energy from the energy source, said beam of energy is moved around utilizing scanners to generate sequential craters, said craters constitute the desired pattern.
- 5. A method according to claim 3, wherein said craters are generated using a beam of energy from the energy source, said beam of energy is split using optical phase plate to generate multiple beams from the single energy source beam, said multiple beams simultaneously generate said crater pattern which constitute the desired pattern.
- 6. A method according to claim 3, wherein said energy source beam is capable of being absorbed by the target material.
- 7. A method according to claim 3, wherein said energy source beam is not well-absorbed by said target material and said target material is coated by a layer of a substance capable of absorbing at least one band of wavelength of the source energy beam.
- 8. The method according to claim 3, wherein said pattern comprise a color image, said color image is generate utilizing 3 RGB color components, (Cyan, Yellow, and Magenta) said target material is first etched and coated with first color component, said first color component is applied and wiped leaving said color component only in the etched portions of the target;
a mask is applied to the target, said target is placed back to its original position, and; said energy source is s now adjusted to create a second pattern corresponding to second color patter that overlap with first color pattern, said source energy level is reduced so that first color is not completely removed, said second color is only covering said first color, said second color is selected to be a lighter color than said first color to allow for optical mixing of both colors on that pixel, said second color is applied only to the craters generated by the second pattern, and then said mask is removed; and the process is repeated for third color, said third color being the most transmitting color, the order of the colors gives the best color mixing, upon removal of the last mask a full color image is generated.
- 9. The method according to claim 8, wherein the generated color pattern is coated with a light transmitting coat to allow better durability and shine.
- 10. The method according to claim 3, wherein said pattern comprise a color image, said color image is generate utilizing 3 RGB color components, (Cyan, Yellow, and Magenta) said target material is first modified by said energy source beam to create a crater pattern for first color, said pattern for first color is adjusted to create a larger crater density in areas where first color is desired to be more prominent, said first pattern for first color is then coated with first color, said first color is applied and wiped leaving said color component only in the etched portions of the target;
a mask is applied to the target, said target is placed back to its original position; said energy source is adjusted to create a pattern for the second color, said pattern for second color DOES NOT overlap with said pattern for first color, said pattern for second color is adjusted to create a larger crater density in areas where second color is desired to be more prominent, said pattern for second color perforate the mask and etches craters in the desired target, said second color is then applied, said mask preventing the covering of said first color by second color; and said mask is removed, a third mask is applied and the process is repeated for third color.
- 11. The method according to claim 3, wherein a substance capable of removing the energy from the surface of the target of a material is applied to the surface of the target material periodically AFTER the interaction is completed in at least a segment of said pattern area, to allow cooling of the surface and minimization of pain.
- 12. A Device for creating a pattern of spots of modified physical characteristics in a target material, comprising:
an electromagnetic energy source; and a combination of movable mirrors and lenses capable of manipulating a beam of energy emerging from said energy source in order to create a desired pattern at the target material.
- 13. The device of claim 12, wherein said resultant modifications of physical characteristics in a target material comprise removal of some of the material from the target material.
- 14. The device of claim 13, wherein a the device is also capable of applying intermediate material capable of absorbing said source energy is applied to the target material in order to enhance absorption of said sources energy if source energy is not well absorbed by the target material.
- 15. The device according to claim 14, wherein said removal of some the material from said target material generates a crater pattern capable of holding color pigments, said craters are of a desired size, shape and depth.
- 16. A device according to claim 14, wherein said material removed from the target material result in the generation of a perforation pattern in the target material, said perforation pattern is deep enough to allow delivery of a substance through said target material to a desired depth below said target material surface.
- 17. A Device for creating a pattern of locations of modified physical characteristics in a target material, comprising:
an electromagnetic energy source; and an intermediate transparent optical medium capable manipulating the original source energy beam in order to create a desired pattern of multiple simultaneous interactions at the target material, thereby generating a pattern of modified spots at the target material, said modification comprises modification of physical characteristics of the target material.
- 18. The device of claim 17, wherein said resultant modifications of physical characteristics in a target material comprise removal of some of the material from the target material.
- 19. The device of claim 18, wherein a the device is also capable of applying intermediate material capable of absorbing said source energy is applied to the target material in order to enhance absorption of said sources energy if source energy is not well absorbed by the target material.
- 20. The device according to claim 19, wherein said removal of some the material from said target material generates a crater pattern capable of holding color pigments, said craters are of a desired size, shape and depth.
- 21. A device according to claim 19, wherein said material removed from the target material result in the generation of a perforation pattern in the target material, said perforation pattern is deep enough to allow delivery of a substance through said target material to a desired depth below said target material surface.
- 22. A devise for the delivery of substance through a blocking layer of material comprising:
an energy source; optical components and scanners to move the beam over the target area; an activating switch and control unit capable of steering the beam from the energy source across the blocking surface resulting in controlled crater formation across the blocking surface; and a dispenser to deposit a product that needs to be delivered through a barrier surface onto the barrier surface after said energy source has breached the surface.
- 23. The devise of claim 22 wherein the energy source is a laser with a wavelength that is well absorbed by the target material.
- 24. The devise of claim 22 further comprising a laser energy source said laser wavelength is not well absorbed by the target material.
- 25. The device of claim 24 further comprising a dispenser capable of bringing a substance of high absorbing capable of absorbing a substantial portion of said source energy, into contact with specific desired locations on the target so that the interaction between said energy source and said substance generates a crater pattern in the target blocking material, said crater pattern allows a substance to be delivered to breach the blocking surface; and
- 26. The device of claim 25 further comprising:
a reservoir of substance capable of removing energy from a surface, a dispenser capable of directing said energy to the treated blocking surface and removing excess energy after the interaction is completed. After the interaction is completed and removing excess heat from the target surface to eliminated or minimize discomfort.
- 27. The device of claim 26 further comprising a reservoir for drug, nutrient or any substance to be delivered across the a blocking substance barrier, the device further capable of attaching a dispenser, said dispenser capable of bringing said substance to be delivered across the barrier into contact with said blocking material barrier after it has been modified by the device energy source.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application claims priority from U.S. provisional patent application No. 60/210,532, entitled, LASER ENGRAVING FOR COSMETIC AND BIO-MEDICAL APPLICATION, filed Jun. 8, 2000, U.S. provisional application No. 60/214,530, filed Jun. 27, 2000, U.S. Provisional Application No. 60,215,657 filed Jul. 1, 2000, and U.S. Provisional Application No. ______, entitled METHOD AND DEVICE FOR MATERIAL CONDITIONING filed Feb. 28, 2001, all of which are assigned to the assignee of the present patent application and all of which are incorporated herein by reference.
Provisional Applications (3)
|
Number |
Date |
Country |
|
60210532 |
Jun 2000 |
US |
|
60214530 |
Jun 2000 |
US |
|
60215657 |
Jul 2000 |
US |